xfs: avoid the iolock in xfs_free_eofblocks for evicted inodes
[deliverable/linux.git] / fs / xfs / xfs_super.c
CommitLineData
1da177e4 1/*
a805bad5 2 * Copyright (c) 2000-2006 Silicon Graphics, Inc.
7b718769 3 * All Rights Reserved.
1da177e4 4 *
7b718769
NS
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License as
1da177e4
LT
7 * published by the Free Software Foundation.
8 *
7b718769
NS
9 * This program is distributed in the hope that it would be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
1da177e4 13 *
7b718769
NS
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write the Free Software Foundation,
16 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
1da177e4 17 */
0b1b213f 18
1da177e4 19#include "xfs.h"
1da177e4 20#include "xfs_log.h"
a844f451 21#include "xfs_inum.h"
1da177e4
LT
22#include "xfs_trans.h"
23#include "xfs_sb.h"
a844f451 24#include "xfs_ag.h"
1da177e4
LT
25#include "xfs_dir2.h"
26#include "xfs_alloc.h"
1da177e4
LT
27#include "xfs_quota.h"
28#include "xfs_mount.h"
1da177e4 29#include "xfs_bmap_btree.h"
a844f451 30#include "xfs_alloc_btree.h"
1da177e4 31#include "xfs_ialloc_btree.h"
1da177e4
LT
32#include "xfs_dinode.h"
33#include "xfs_inode.h"
a844f451
NS
34#include "xfs_btree.h"
35#include "xfs_ialloc.h"
1da177e4 36#include "xfs_bmap.h"
1da177e4
LT
37#include "xfs_rtalloc.h"
38#include "xfs_error.h"
39#include "xfs_itable.h"
9909c4aa 40#include "xfs_fsops.h"
1da177e4
LT
41#include "xfs_attr.h"
42#include "xfs_buf_item.h"
43#include "xfs_utils.h"
739bfb2a 44#include "xfs_vnodeops.h"
a67d7c5f 45#include "xfs_log_priv.h"
249a8c11 46#include "xfs_trans_priv.h"
48b62a1a 47#include "xfs_filestream.h"
9f8868ff 48#include "xfs_da_btree.h"
9f8868ff
CH
49#include "xfs_extfree_item.h"
50#include "xfs_mru_cache.h"
51#include "xfs_inode_item.h"
fe4fa4b8 52#include "xfs_sync.h"
0b1b213f 53#include "xfs_trace.h"
1da177e4
LT
54
55#include <linux/namei.h>
56#include <linux/init.h>
5a0e3ad6 57#include <linux/slab.h>
1da177e4 58#include <linux/mount.h>
0829c360 59#include <linux/mempool.h>
1da177e4 60#include <linux/writeback.h>
4df08c52 61#include <linux/kthread.h>
7dfb7103 62#include <linux/freezer.h>
62a877e3 63#include <linux/parser.h>
1da177e4 64
b87221de 65static const struct super_operations xfs_super_operations;
7989cb8e 66static kmem_zone_t *xfs_ioend_zone;
0829c360 67mempool_t *xfs_ioend_pool;
1da177e4 68
a67d7c5f
DC
69#define MNTOPT_LOGBUFS "logbufs" /* number of XFS log buffers */
70#define MNTOPT_LOGBSIZE "logbsize" /* size of XFS log buffers */
71#define MNTOPT_LOGDEV "logdev" /* log device */
72#define MNTOPT_RTDEV "rtdev" /* realtime I/O device */
73#define MNTOPT_BIOSIZE "biosize" /* log2 of preferred buffered io size */
74#define MNTOPT_WSYNC "wsync" /* safe-mode nfs compatible mount */
a67d7c5f
DC
75#define MNTOPT_NOALIGN "noalign" /* turn off stripe alignment */
76#define MNTOPT_SWALLOC "swalloc" /* turn on stripe width allocation */
77#define MNTOPT_SUNIT "sunit" /* data volume stripe unit */
78#define MNTOPT_SWIDTH "swidth" /* data volume stripe width */
79#define MNTOPT_NOUUID "nouuid" /* ignore filesystem UUID */
80#define MNTOPT_MTPT "mtpt" /* filesystem mount point */
81#define MNTOPT_GRPID "grpid" /* group-ID from parent directory */
82#define MNTOPT_NOGRPID "nogrpid" /* group-ID from current process */
83#define MNTOPT_BSDGROUPS "bsdgroups" /* group-ID from parent directory */
84#define MNTOPT_SYSVGROUPS "sysvgroups" /* group-ID from current process */
85#define MNTOPT_ALLOCSIZE "allocsize" /* preferred allocation size */
86#define MNTOPT_NORECOVERY "norecovery" /* don't run XFS recovery */
87#define MNTOPT_BARRIER "barrier" /* use writer barriers for log write and
88 * unwritten extent conversion */
89#define MNTOPT_NOBARRIER "nobarrier" /* .. disable */
a67d7c5f
DC
90#define MNTOPT_64BITINODE "inode64" /* inodes can be allocated anywhere */
91#define MNTOPT_IKEEP "ikeep" /* do not free empty inode clusters */
92#define MNTOPT_NOIKEEP "noikeep" /* free empty inode clusters */
93#define MNTOPT_LARGEIO "largeio" /* report large I/O sizes in stat() */
94#define MNTOPT_NOLARGEIO "nolargeio" /* do not report large I/O sizes
95 * in stat(). */
96#define MNTOPT_ATTR2 "attr2" /* do use attr2 attribute format */
97#define MNTOPT_NOATTR2 "noattr2" /* do not use attr2 attribute format */
98#define MNTOPT_FILESTREAM "filestreams" /* use filestreams allocator */
99#define MNTOPT_QUOTA "quota" /* disk quotas (user) */
100#define MNTOPT_NOQUOTA "noquota" /* no quotas */
101#define MNTOPT_USRQUOTA "usrquota" /* user quota enabled */
102#define MNTOPT_GRPQUOTA "grpquota" /* group quota enabled */
103#define MNTOPT_PRJQUOTA "prjquota" /* project quota enabled */
104#define MNTOPT_UQUOTA "uquota" /* user quota (IRIX variant) */
105#define MNTOPT_GQUOTA "gquota" /* group quota (IRIX variant) */
106#define MNTOPT_PQUOTA "pquota" /* project quota (IRIX variant) */
107#define MNTOPT_UQUOTANOENF "uqnoenforce"/* user quota limit enforcement */
108#define MNTOPT_GQUOTANOENF "gqnoenforce"/* group quota limit enforcement */
109#define MNTOPT_PQUOTANOENF "pqnoenforce"/* project quota limit enforcement */
110#define MNTOPT_QUOTANOENF "qnoenforce" /* same as uqnoenforce */
e84661aa
CH
111#define MNTOPT_DELAYLOG "delaylog" /* Delayed logging enabled */
112#define MNTOPT_NODELAYLOG "nodelaylog" /* Delayed logging disabled */
113#define MNTOPT_DISCARD "discard" /* Discard unused blocks */
114#define MNTOPT_NODISCARD "nodiscard" /* Do not discard unused blocks */
a67d7c5f 115
62a877e3
CH
116/*
117 * Table driven mount option parser.
118 *
119 * Currently only used for remount, but it will be used for mount
120 * in the future, too.
121 */
122enum {
123 Opt_barrier, Opt_nobarrier, Opt_err
124};
125
a447c093 126static const match_table_t tokens = {
62a877e3
CH
127 {Opt_barrier, "barrier"},
128 {Opt_nobarrier, "nobarrier"},
129 {Opt_err, NULL}
130};
131
132
a67d7c5f
DC
133STATIC unsigned long
134suffix_strtoul(char *s, char **endp, unsigned int base)
135{
136 int last, shift_left_factor = 0;
137 char *value = s;
138
139 last = strlen(value) - 1;
140 if (value[last] == 'K' || value[last] == 'k') {
141 shift_left_factor = 10;
142 value[last] = '\0';
143 }
144 if (value[last] == 'M' || value[last] == 'm') {
145 shift_left_factor = 20;
146 value[last] = '\0';
147 }
148 if (value[last] == 'G' || value[last] == 'g') {
149 shift_left_factor = 30;
150 value[last] = '\0';
151 }
152
153 return simple_strtoul((const char *)s, endp, base) << shift_left_factor;
154}
155
9d565ffa
CH
156/*
157 * This function fills in xfs_mount_t fields based on mount args.
158 * Note: the superblock has _not_ yet been read in.
159 *
160 * Note that this function leaks the various device name allocations on
161 * failure. The caller takes care of them.
162 */
a67d7c5f
DC
163STATIC int
164xfs_parseargs(
165 struct xfs_mount *mp,
288699fe 166 char *options)
a67d7c5f 167{
9d565ffa 168 struct super_block *sb = mp->m_super;
a67d7c5f 169 char *this_char, *value, *eov;
9d565ffa
CH
170 int dsunit = 0;
171 int dswidth = 0;
172 int iosize = 0;
a5687787 173 __uint8_t iosizelog = 0;
9d565ffa 174
4f10700a
DC
175 /*
176 * set up the mount name first so all the errors will refer to the
177 * correct device.
178 */
179 mp->m_fsname = kstrndup(sb->s_id, MAXNAMELEN, GFP_KERNEL);
180 if (!mp->m_fsname)
181 return ENOMEM;
182 mp->m_fsname_len = strlen(mp->m_fsname) + 1;
183
9d565ffa
CH
184 /*
185 * Copy binary VFS mount flags we are interested in.
186 */
187 if (sb->s_flags & MS_RDONLY)
188 mp->m_flags |= XFS_MOUNT_RDONLY;
189 if (sb->s_flags & MS_DIRSYNC)
190 mp->m_flags |= XFS_MOUNT_DIRSYNC;
191 if (sb->s_flags & MS_SYNCHRONOUS)
192 mp->m_flags |= XFS_MOUNT_WSYNC;
193
194 /*
195 * Set some default flags that could be cleared by the mount option
196 * parsing.
197 */
198 mp->m_flags |= XFS_MOUNT_BARRIER;
199 mp->m_flags |= XFS_MOUNT_COMPAT_IOSIZE;
200 mp->m_flags |= XFS_MOUNT_SMALL_INUMS;
a67d7c5f 201
9d565ffa
CH
202 /*
203 * These can be overridden by the mount option parsing.
204 */
205 mp->m_logbufs = -1;
206 mp->m_logbsize = -1;
a67d7c5f
DC
207
208 if (!options)
209 goto done;
210
a67d7c5f
DC
211 while ((this_char = strsep(&options, ",")) != NULL) {
212 if (!*this_char)
213 continue;
214 if ((value = strchr(this_char, '=')) != NULL)
215 *value++ = 0;
216
217 if (!strcmp(this_char, MNTOPT_LOGBUFS)) {
218 if (!value || !*value) {
4f10700a 219 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
220 this_char);
221 return EINVAL;
222 }
9d565ffa 223 mp->m_logbufs = simple_strtoul(value, &eov, 10);
a67d7c5f
DC
224 } else if (!strcmp(this_char, MNTOPT_LOGBSIZE)) {
225 if (!value || !*value) {
4f10700a 226 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
227 this_char);
228 return EINVAL;
229 }
9d565ffa 230 mp->m_logbsize = suffix_strtoul(value, &eov, 10);
a67d7c5f
DC
231 } else if (!strcmp(this_char, MNTOPT_LOGDEV)) {
232 if (!value || !*value) {
4f10700a 233 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
234 this_char);
235 return EINVAL;
236 }
9d565ffa
CH
237 mp->m_logname = kstrndup(value, MAXNAMELEN, GFP_KERNEL);
238 if (!mp->m_logname)
239 return ENOMEM;
a67d7c5f 240 } else if (!strcmp(this_char, MNTOPT_MTPT)) {
4f10700a 241 xfs_warn(mp, "%s option not allowed on this system",
288699fe
CH
242 this_char);
243 return EINVAL;
a67d7c5f
DC
244 } else if (!strcmp(this_char, MNTOPT_RTDEV)) {
245 if (!value || !*value) {
4f10700a 246 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
247 this_char);
248 return EINVAL;
249 }
9d565ffa
CH
250 mp->m_rtname = kstrndup(value, MAXNAMELEN, GFP_KERNEL);
251 if (!mp->m_rtname)
252 return ENOMEM;
a67d7c5f
DC
253 } else if (!strcmp(this_char, MNTOPT_BIOSIZE)) {
254 if (!value || !*value) {
4f10700a 255 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
256 this_char);
257 return EINVAL;
258 }
259 iosize = simple_strtoul(value, &eov, 10);
1ec7944b 260 iosizelog = ffs(iosize) - 1;
a67d7c5f
DC
261 } else if (!strcmp(this_char, MNTOPT_ALLOCSIZE)) {
262 if (!value || !*value) {
4f10700a 263 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
264 this_char);
265 return EINVAL;
266 }
267 iosize = suffix_strtoul(value, &eov, 10);
9d565ffa 268 iosizelog = ffs(iosize) - 1;
a67d7c5f
DC
269 } else if (!strcmp(this_char, MNTOPT_GRPID) ||
270 !strcmp(this_char, MNTOPT_BSDGROUPS)) {
271 mp->m_flags |= XFS_MOUNT_GRPID;
272 } else if (!strcmp(this_char, MNTOPT_NOGRPID) ||
273 !strcmp(this_char, MNTOPT_SYSVGROUPS)) {
274 mp->m_flags &= ~XFS_MOUNT_GRPID;
275 } else if (!strcmp(this_char, MNTOPT_WSYNC)) {
9d565ffa 276 mp->m_flags |= XFS_MOUNT_WSYNC;
a67d7c5f 277 } else if (!strcmp(this_char, MNTOPT_NORECOVERY)) {
9d565ffa 278 mp->m_flags |= XFS_MOUNT_NORECOVERY;
a67d7c5f 279 } else if (!strcmp(this_char, MNTOPT_NOALIGN)) {
9d565ffa 280 mp->m_flags |= XFS_MOUNT_NOALIGN;
a67d7c5f 281 } else if (!strcmp(this_char, MNTOPT_SWALLOC)) {
9d565ffa 282 mp->m_flags |= XFS_MOUNT_SWALLOC;
a67d7c5f
DC
283 } else if (!strcmp(this_char, MNTOPT_SUNIT)) {
284 if (!value || !*value) {
4f10700a 285 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
286 this_char);
287 return EINVAL;
288 }
289 dsunit = simple_strtoul(value, &eov, 10);
290 } else if (!strcmp(this_char, MNTOPT_SWIDTH)) {
291 if (!value || !*value) {
4f10700a 292 xfs_warn(mp, "%s option requires an argument",
a67d7c5f
DC
293 this_char);
294 return EINVAL;
295 }
296 dswidth = simple_strtoul(value, &eov, 10);
297 } else if (!strcmp(this_char, MNTOPT_64BITINODE)) {
9d565ffa 298 mp->m_flags &= ~XFS_MOUNT_SMALL_INUMS;
a67d7c5f 299#if !XFS_BIG_INUMS
4f10700a 300 xfs_warn(mp, "%s option not allowed on this system",
a67d7c5f
DC
301 this_char);
302 return EINVAL;
303#endif
304 } else if (!strcmp(this_char, MNTOPT_NOUUID)) {
9d565ffa 305 mp->m_flags |= XFS_MOUNT_NOUUID;
a67d7c5f 306 } else if (!strcmp(this_char, MNTOPT_BARRIER)) {
9d565ffa 307 mp->m_flags |= XFS_MOUNT_BARRIER;
a67d7c5f 308 } else if (!strcmp(this_char, MNTOPT_NOBARRIER)) {
9d565ffa 309 mp->m_flags &= ~XFS_MOUNT_BARRIER;
a67d7c5f 310 } else if (!strcmp(this_char, MNTOPT_IKEEP)) {
9d565ffa 311 mp->m_flags |= XFS_MOUNT_IKEEP;
a67d7c5f 312 } else if (!strcmp(this_char, MNTOPT_NOIKEEP)) {
9d565ffa 313 mp->m_flags &= ~XFS_MOUNT_IKEEP;
a67d7c5f 314 } else if (!strcmp(this_char, MNTOPT_LARGEIO)) {
9d565ffa 315 mp->m_flags &= ~XFS_MOUNT_COMPAT_IOSIZE;
a67d7c5f 316 } else if (!strcmp(this_char, MNTOPT_NOLARGEIO)) {
9d565ffa 317 mp->m_flags |= XFS_MOUNT_COMPAT_IOSIZE;
a67d7c5f 318 } else if (!strcmp(this_char, MNTOPT_ATTR2)) {
9d565ffa 319 mp->m_flags |= XFS_MOUNT_ATTR2;
a67d7c5f 320 } else if (!strcmp(this_char, MNTOPT_NOATTR2)) {
9d565ffa
CH
321 mp->m_flags &= ~XFS_MOUNT_ATTR2;
322 mp->m_flags |= XFS_MOUNT_NOATTR2;
a67d7c5f 323 } else if (!strcmp(this_char, MNTOPT_FILESTREAM)) {
9d565ffa 324 mp->m_flags |= XFS_MOUNT_FILESTREAMS;
a67d7c5f 325 } else if (!strcmp(this_char, MNTOPT_NOQUOTA)) {
4177af3a
CS
326 mp->m_qflags &= ~XFS_ALL_QUOTA_ACCT;
327 mp->m_qflags &= ~XFS_ALL_QUOTA_ENFD;
328 mp->m_qflags &= ~XFS_ALL_QUOTA_ACTIVE;
a67d7c5f
DC
329 } else if (!strcmp(this_char, MNTOPT_QUOTA) ||
330 !strcmp(this_char, MNTOPT_UQUOTA) ||
331 !strcmp(this_char, MNTOPT_USRQUOTA)) {
9d565ffa
CH
332 mp->m_qflags |= (XFS_UQUOTA_ACCT | XFS_UQUOTA_ACTIVE |
333 XFS_UQUOTA_ENFD);
a67d7c5f
DC
334 } else if (!strcmp(this_char, MNTOPT_QUOTANOENF) ||
335 !strcmp(this_char, MNTOPT_UQUOTANOENF)) {
9d565ffa
CH
336 mp->m_qflags |= (XFS_UQUOTA_ACCT | XFS_UQUOTA_ACTIVE);
337 mp->m_qflags &= ~XFS_UQUOTA_ENFD;
a67d7c5f
DC
338 } else if (!strcmp(this_char, MNTOPT_PQUOTA) ||
339 !strcmp(this_char, MNTOPT_PRJQUOTA)) {
9d565ffa
CH
340 mp->m_qflags |= (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE |
341 XFS_OQUOTA_ENFD);
a67d7c5f 342 } else if (!strcmp(this_char, MNTOPT_PQUOTANOENF)) {
9d565ffa
CH
343 mp->m_qflags |= (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE);
344 mp->m_qflags &= ~XFS_OQUOTA_ENFD;
a67d7c5f
DC
345 } else if (!strcmp(this_char, MNTOPT_GQUOTA) ||
346 !strcmp(this_char, MNTOPT_GRPQUOTA)) {
9d565ffa
CH
347 mp->m_qflags |= (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE |
348 XFS_OQUOTA_ENFD);
a67d7c5f 349 } else if (!strcmp(this_char, MNTOPT_GQUOTANOENF)) {
9d565ffa
CH
350 mp->m_qflags |= (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE);
351 mp->m_qflags &= ~XFS_OQUOTA_ENFD;
71e330b5 352 } else if (!strcmp(this_char, MNTOPT_DELAYLOG)) {
93b8a585
CH
353 xfs_warn(mp,
354 "delaylog is the default now, option is deprecated.");
71e330b5 355 } else if (!strcmp(this_char, MNTOPT_NODELAYLOG)) {
242d6219 356 xfs_warn(mp,
93b8a585 357 "nodelaylog support has been removed, option is deprecated.");
e84661aa
CH
358 } else if (!strcmp(this_char, MNTOPT_DISCARD)) {
359 mp->m_flags |= XFS_MOUNT_DISCARD;
360 } else if (!strcmp(this_char, MNTOPT_NODISCARD)) {
361 mp->m_flags &= ~XFS_MOUNT_DISCARD;
a67d7c5f 362 } else if (!strcmp(this_char, "ihashsize")) {
4f10700a
DC
363 xfs_warn(mp,
364 "ihashsize no longer used, option is deprecated.");
a67d7c5f 365 } else if (!strcmp(this_char, "osyncisdsync")) {
4f10700a
DC
366 xfs_warn(mp,
367 "osyncisdsync has no effect, option is deprecated.");
a64afb05 368 } else if (!strcmp(this_char, "osyncisosync")) {
4f10700a
DC
369 xfs_warn(mp,
370 "osyncisosync has no effect, option is deprecated.");
a67d7c5f 371 } else if (!strcmp(this_char, "irixsgid")) {
4f10700a
DC
372 xfs_warn(mp,
373 "irixsgid is now a sysctl(2) variable, option is deprecated.");
a67d7c5f 374 } else {
4f10700a 375 xfs_warn(mp, "unknown mount option [%s].", this_char);
a67d7c5f
DC
376 return EINVAL;
377 }
378 }
379
9d565ffa
CH
380 /*
381 * no recovery flag requires a read-only mount
382 */
383 if ((mp->m_flags & XFS_MOUNT_NORECOVERY) &&
384 !(mp->m_flags & XFS_MOUNT_RDONLY)) {
4f10700a 385 xfs_warn(mp, "no-recovery mounts must be read-only.");
9d565ffa 386 return EINVAL;
a67d7c5f
DC
387 }
388
9d565ffa 389 if ((mp->m_flags & XFS_MOUNT_NOALIGN) && (dsunit || dswidth)) {
4f10700a
DC
390 xfs_warn(mp,
391 "sunit and swidth options incompatible with the noalign option");
a67d7c5f
DC
392 return EINVAL;
393 }
394
7d095257
CH
395#ifndef CONFIG_XFS_QUOTA
396 if (XFS_IS_QUOTA_RUNNING(mp)) {
4f10700a 397 xfs_warn(mp, "quota support not available in this kernel.");
7d095257
CH
398 return EINVAL;
399 }
400#endif
401
9d565ffa
CH
402 if ((mp->m_qflags & (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE)) &&
403 (mp->m_qflags & (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE))) {
4f10700a 404 xfs_warn(mp, "cannot mount with both project and group quota");
a67d7c5f
DC
405 return EINVAL;
406 }
407
a67d7c5f 408 if ((dsunit && !dswidth) || (!dsunit && dswidth)) {
4f10700a 409 xfs_warn(mp, "sunit and swidth must be specified together");
a67d7c5f
DC
410 return EINVAL;
411 }
412
413 if (dsunit && (dswidth % dsunit != 0)) {
4f10700a
DC
414 xfs_warn(mp,
415 "stripe width (%d) must be a multiple of the stripe unit (%d)",
a67d7c5f
DC
416 dswidth, dsunit);
417 return EINVAL;
418 }
419
9d565ffa
CH
420done:
421 if (!(mp->m_flags & XFS_MOUNT_NOALIGN)) {
422 /*
423 * At this point the superblock has not been read
424 * in, therefore we do not know the block size.
425 * Before the mount call ends we will convert
426 * these to FSBs.
427 */
a67d7c5f 428 if (dsunit) {
9d565ffa
CH
429 mp->m_dalign = dsunit;
430 mp->m_flags |= XFS_MOUNT_RETERR;
a67d7c5f 431 }
9d565ffa
CH
432
433 if (dswidth)
434 mp->m_swidth = dswidth;
435 }
436
437 if (mp->m_logbufs != -1 &&
438 mp->m_logbufs != 0 &&
439 (mp->m_logbufs < XLOG_MIN_ICLOGS ||
440 mp->m_logbufs > XLOG_MAX_ICLOGS)) {
4f10700a 441 xfs_warn(mp, "invalid logbufs value: %d [not %d-%d]",
9d565ffa
CH
442 mp->m_logbufs, XLOG_MIN_ICLOGS, XLOG_MAX_ICLOGS);
443 return XFS_ERROR(EINVAL);
444 }
445 if (mp->m_logbsize != -1 &&
446 mp->m_logbsize != 0 &&
447 (mp->m_logbsize < XLOG_MIN_RECORD_BSIZE ||
448 mp->m_logbsize > XLOG_MAX_RECORD_BSIZE ||
449 !is_power_of_2(mp->m_logbsize))) {
4f10700a
DC
450 xfs_warn(mp,
451 "invalid logbufsize: %d [not 16k,32k,64k,128k or 256k]",
9d565ffa
CH
452 mp->m_logbsize);
453 return XFS_ERROR(EINVAL);
454 }
455
9d565ffa
CH
456 if (iosizelog) {
457 if (iosizelog > XFS_MAX_IO_LOG ||
458 iosizelog < XFS_MIN_IO_LOG) {
4f10700a 459 xfs_warn(mp, "invalid log iosize: %d [not %d-%d]",
9d565ffa
CH
460 iosizelog, XFS_MIN_IO_LOG,
461 XFS_MAX_IO_LOG);
462 return XFS_ERROR(EINVAL);
463 }
464
465 mp->m_flags |= XFS_MOUNT_DFLT_IOSIZE;
466 mp->m_readio_log = iosizelog;
467 mp->m_writeio_log = iosizelog;
a67d7c5f
DC
468 }
469
a67d7c5f
DC
470 return 0;
471}
472
473struct proc_xfs_info {
474 int flag;
475 char *str;
476};
477
478STATIC int
479xfs_showargs(
480 struct xfs_mount *mp,
481 struct seq_file *m)
482{
483 static struct proc_xfs_info xfs_info_set[] = {
484 /* the few simple ones we can get from the mount struct */
1bd960ee 485 { XFS_MOUNT_IKEEP, "," MNTOPT_IKEEP },
a67d7c5f 486 { XFS_MOUNT_WSYNC, "," MNTOPT_WSYNC },
a67d7c5f
DC
487 { XFS_MOUNT_NOALIGN, "," MNTOPT_NOALIGN },
488 { XFS_MOUNT_SWALLOC, "," MNTOPT_SWALLOC },
489 { XFS_MOUNT_NOUUID, "," MNTOPT_NOUUID },
490 { XFS_MOUNT_NORECOVERY, "," MNTOPT_NORECOVERY },
a67d7c5f
DC
491 { XFS_MOUNT_ATTR2, "," MNTOPT_ATTR2 },
492 { XFS_MOUNT_FILESTREAMS, "," MNTOPT_FILESTREAM },
a67d7c5f 493 { XFS_MOUNT_GRPID, "," MNTOPT_GRPID },
e84661aa 494 { XFS_MOUNT_DISCARD, "," MNTOPT_DISCARD },
a67d7c5f
DC
495 { 0, NULL }
496 };
497 static struct proc_xfs_info xfs_info_unset[] = {
498 /* the few simple ones we can get from the mount struct */
a67d7c5f
DC
499 { XFS_MOUNT_COMPAT_IOSIZE, "," MNTOPT_LARGEIO },
500 { XFS_MOUNT_BARRIER, "," MNTOPT_NOBARRIER },
501 { XFS_MOUNT_SMALL_INUMS, "," MNTOPT_64BITINODE },
502 { 0, NULL }
503 };
504 struct proc_xfs_info *xfs_infop;
505
506 for (xfs_infop = xfs_info_set; xfs_infop->flag; xfs_infop++) {
507 if (mp->m_flags & xfs_infop->flag)
508 seq_puts(m, xfs_infop->str);
509 }
510 for (xfs_infop = xfs_info_unset; xfs_infop->flag; xfs_infop++) {
511 if (!(mp->m_flags & xfs_infop->flag))
512 seq_puts(m, xfs_infop->str);
513 }
514
515 if (mp->m_flags & XFS_MOUNT_DFLT_IOSIZE)
516 seq_printf(m, "," MNTOPT_ALLOCSIZE "=%dk",
517 (int)(1 << mp->m_writeio_log) >> 10);
518
519 if (mp->m_logbufs > 0)
520 seq_printf(m, "," MNTOPT_LOGBUFS "=%d", mp->m_logbufs);
521 if (mp->m_logbsize > 0)
522 seq_printf(m, "," MNTOPT_LOGBSIZE "=%dk", mp->m_logbsize >> 10);
523
524 if (mp->m_logname)
525 seq_printf(m, "," MNTOPT_LOGDEV "=%s", mp->m_logname);
526 if (mp->m_rtname)
527 seq_printf(m, "," MNTOPT_RTDEV "=%s", mp->m_rtname);
528
529 if (mp->m_dalign > 0)
530 seq_printf(m, "," MNTOPT_SUNIT "=%d",
531 (int)XFS_FSB_TO_BB(mp, mp->m_dalign));
532 if (mp->m_swidth > 0)
533 seq_printf(m, "," MNTOPT_SWIDTH "=%d",
534 (int)XFS_FSB_TO_BB(mp, mp->m_swidth));
535
536 if (mp->m_qflags & (XFS_UQUOTA_ACCT|XFS_UQUOTA_ENFD))
537 seq_puts(m, "," MNTOPT_USRQUOTA);
538 else if (mp->m_qflags & XFS_UQUOTA_ACCT)
539 seq_puts(m, "," MNTOPT_UQUOTANOENF);
540
988abe40
AE
541 /* Either project or group quotas can be active, not both */
542
543 if (mp->m_qflags & XFS_PQUOTA_ACCT) {
544 if (mp->m_qflags & XFS_OQUOTA_ENFD)
545 seq_puts(m, "," MNTOPT_PRJQUOTA);
546 else
547 seq_puts(m, "," MNTOPT_PQUOTANOENF);
548 } else if (mp->m_qflags & XFS_GQUOTA_ACCT) {
549 if (mp->m_qflags & XFS_OQUOTA_ENFD)
550 seq_puts(m, "," MNTOPT_GRPQUOTA);
551 else
552 seq_puts(m, "," MNTOPT_GQUOTANOENF);
553 }
a67d7c5f
DC
554
555 if (!(mp->m_qflags & XFS_ALL_QUOTA_ACCT))
556 seq_puts(m, "," MNTOPT_NOQUOTA);
557
558 return 0;
559}
1da177e4
LT
560__uint64_t
561xfs_max_file_offset(
562 unsigned int blockshift)
563{
564 unsigned int pagefactor = 1;
565 unsigned int bitshift = BITS_PER_LONG - 1;
566
567 /* Figure out maximum filesize, on Linux this can depend on
568 * the filesystem blocksize (on 32 bit platforms).
ebdec241 569 * __block_write_begin does this in an [unsigned] long...
1da177e4
LT
570 * page->index << (PAGE_CACHE_SHIFT - bbits)
571 * So, for page sized blocks (4K on 32 bit platforms),
572 * this wraps at around 8Tb (hence MAX_LFS_FILESIZE which is
573 * (((u64)PAGE_CACHE_SIZE << (BITS_PER_LONG-1))-1)
574 * but for smaller blocksizes it is less (bbits = log2 bsize).
575 * Note1: get_block_t takes a long (implicit cast from above)
576 * Note2: The Large Block Device (LBD and HAVE_SECTOR_T) patch
577 * can optionally convert the [unsigned] long from above into
578 * an [unsigned] long long.
579 */
580
581#if BITS_PER_LONG == 32
90c699a9 582# if defined(CONFIG_LBDAF)
1da177e4
LT
583 ASSERT(sizeof(sector_t) == 8);
584 pagefactor = PAGE_CACHE_SIZE;
585 bitshift = BITS_PER_LONG;
586# else
587 pagefactor = PAGE_CACHE_SIZE >> (PAGE_CACHE_SHIFT - blockshift);
588# endif
589#endif
590
591 return (((__uint64_t)pagefactor) << bitshift) - 1;
592}
593
3180e66d 594STATIC int
1da177e4
LT
595xfs_blkdev_get(
596 xfs_mount_t *mp,
597 const char *name,
598 struct block_device **bdevp)
599{
600 int error = 0;
601
d4d77629
TH
602 *bdevp = blkdev_get_by_path(name, FMODE_READ|FMODE_WRITE|FMODE_EXCL,
603 mp);
1da177e4
LT
604 if (IS_ERR(*bdevp)) {
605 error = PTR_ERR(*bdevp);
4f10700a 606 xfs_warn(mp, "Invalid device [%s], error=%d\n", name, error);
1da177e4
LT
607 }
608
609 return -error;
610}
611
3180e66d 612STATIC void
1da177e4
LT
613xfs_blkdev_put(
614 struct block_device *bdev)
615{
616 if (bdev)
e525fd89 617 blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
1da177e4
LT
618}
619
f538d4da
CH
620void
621xfs_blkdev_issue_flush(
622 xfs_buftarg_t *buftarg)
623{
7582df51 624 blkdev_issue_flush(buftarg->bt_bdev, GFP_NOFS, NULL);
f538d4da 625}
1da177e4 626
19f354d4
CH
627STATIC void
628xfs_close_devices(
629 struct xfs_mount *mp)
630{
631 if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) {
c032bfcf 632 struct block_device *logdev = mp->m_logdev_targp->bt_bdev;
b7963133 633 xfs_free_buftarg(mp, mp->m_logdev_targp);
c032bfcf 634 xfs_blkdev_put(logdev);
19f354d4
CH
635 }
636 if (mp->m_rtdev_targp) {
c032bfcf 637 struct block_device *rtdev = mp->m_rtdev_targp->bt_bdev;
b7963133 638 xfs_free_buftarg(mp, mp->m_rtdev_targp);
c032bfcf 639 xfs_blkdev_put(rtdev);
19f354d4 640 }
b7963133 641 xfs_free_buftarg(mp, mp->m_ddev_targp);
19f354d4
CH
642}
643
644/*
645 * The file system configurations are:
646 * (1) device (partition) with data and internal log
647 * (2) logical volume with data and log subvolumes.
648 * (3) logical volume with data, log, and realtime subvolumes.
649 *
650 * We only have to handle opening the log and realtime volumes here if
651 * they are present. The data subvolume has already been opened by
652 * get_sb_bdev() and is stored in sb->s_bdev.
653 */
654STATIC int
655xfs_open_devices(
9d565ffa 656 struct xfs_mount *mp)
19f354d4
CH
657{
658 struct block_device *ddev = mp->m_super->s_bdev;
659 struct block_device *logdev = NULL, *rtdev = NULL;
660 int error;
661
662 /*
663 * Open real time and log devices - order is important.
664 */
9d565ffa
CH
665 if (mp->m_logname) {
666 error = xfs_blkdev_get(mp, mp->m_logname, &logdev);
19f354d4
CH
667 if (error)
668 goto out;
669 }
670
9d565ffa
CH
671 if (mp->m_rtname) {
672 error = xfs_blkdev_get(mp, mp->m_rtname, &rtdev);
19f354d4
CH
673 if (error)
674 goto out_close_logdev;
675
676 if (rtdev == ddev || rtdev == logdev) {
4f10700a
DC
677 xfs_warn(mp,
678 "Cannot mount filesystem with identical rtdev and ddev/logdev.");
19f354d4
CH
679 error = EINVAL;
680 goto out_close_rtdev;
681 }
682 }
683
684 /*
685 * Setup xfs_mount buffer target pointers
686 */
687 error = ENOMEM;
ebad861b 688 mp->m_ddev_targp = xfs_alloc_buftarg(mp, ddev, 0, mp->m_fsname);
19f354d4
CH
689 if (!mp->m_ddev_targp)
690 goto out_close_rtdev;
691
692 if (rtdev) {
ebad861b
DC
693 mp->m_rtdev_targp = xfs_alloc_buftarg(mp, rtdev, 1,
694 mp->m_fsname);
19f354d4
CH
695 if (!mp->m_rtdev_targp)
696 goto out_free_ddev_targ;
697 }
698
699 if (logdev && logdev != ddev) {
ebad861b
DC
700 mp->m_logdev_targp = xfs_alloc_buftarg(mp, logdev, 1,
701 mp->m_fsname);
19f354d4
CH
702 if (!mp->m_logdev_targp)
703 goto out_free_rtdev_targ;
704 } else {
705 mp->m_logdev_targp = mp->m_ddev_targp;
706 }
707
708 return 0;
709
710 out_free_rtdev_targ:
711 if (mp->m_rtdev_targp)
b7963133 712 xfs_free_buftarg(mp, mp->m_rtdev_targp);
19f354d4 713 out_free_ddev_targ:
b7963133 714 xfs_free_buftarg(mp, mp->m_ddev_targp);
19f354d4
CH
715 out_close_rtdev:
716 if (rtdev)
717 xfs_blkdev_put(rtdev);
718 out_close_logdev:
719 if (logdev && logdev != ddev)
720 xfs_blkdev_put(logdev);
721 out:
722 return error;
723}
724
e34b562c
CH
725/*
726 * Setup xfs_mount buffer target pointers based on superblock
727 */
728STATIC int
729xfs_setup_devices(
730 struct xfs_mount *mp)
731{
732 int error;
19f354d4 733
e34b562c
CH
734 error = xfs_setsize_buftarg(mp->m_ddev_targp, mp->m_sb.sb_blocksize,
735 mp->m_sb.sb_sectsize);
736 if (error)
737 return error;
738
739 if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) {
740 unsigned int log_sector_size = BBSIZE;
741
742 if (xfs_sb_version_hassector(&mp->m_sb))
743 log_sector_size = mp->m_sb.sb_logsectsize;
744 error = xfs_setsize_buftarg(mp->m_logdev_targp,
745 mp->m_sb.sb_blocksize,
746 log_sector_size);
747 if (error)
748 return error;
749 }
750 if (mp->m_rtdev_targp) {
751 error = xfs_setsize_buftarg(mp->m_rtdev_targp,
752 mp->m_sb.sb_blocksize,
753 mp->m_sb.sb_sectsize);
754 if (error)
755 return error;
756 }
757
758 return 0;
759}
19f354d4 760
aa6bf01d
CH
761STATIC int
762xfs_init_mount_workqueues(
763 struct xfs_mount *mp)
764{
765 mp->m_data_workqueue = alloc_workqueue("xfs-data/%s",
766 WQ_MEM_RECLAIM, 0, mp->m_fsname);
767 if (!mp->m_data_workqueue)
768 goto out;
769
770 mp->m_unwritten_workqueue = alloc_workqueue("xfs-conv/%s",
771 WQ_MEM_RECLAIM, 0, mp->m_fsname);
772 if (!mp->m_unwritten_workqueue)
773 goto out_destroy_data_iodone_queue;
774
4c2d542f
DC
775 mp->m_cil_workqueue = alloc_workqueue("xfs-cil/%s",
776 WQ_MEM_RECLAIM, 0, mp->m_fsname);
777 if (!mp->m_cil_workqueue)
778 goto out_destroy_unwritten;
aa6bf01d
CH
779 return 0;
780
4c2d542f
DC
781out_destroy_unwritten:
782 destroy_workqueue(mp->m_unwritten_workqueue);
aa6bf01d
CH
783out_destroy_data_iodone_queue:
784 destroy_workqueue(mp->m_data_workqueue);
785out:
786 return -ENOMEM;
787}
788
789STATIC void
790xfs_destroy_mount_workqueues(
791 struct xfs_mount *mp)
792{
4c2d542f 793 destroy_workqueue(mp->m_cil_workqueue);
aa6bf01d
CH
794 destroy_workqueue(mp->m_data_workqueue);
795 destroy_workqueue(mp->m_unwritten_workqueue);
796}
797
bf904248 798/* Catch misguided souls that try to use this interface on XFS */
1da177e4 799STATIC struct inode *
a50cd269 800xfs_fs_alloc_inode(
1da177e4
LT
801 struct super_block *sb)
802{
bf904248 803 BUG();
493dca61 804 return NULL;
1da177e4
LT
805}
806
bf904248 807/*
99fa8cb3
DC
808 * Now that the generic code is guaranteed not to be accessing
809 * the linux inode, we can reclaim the inode.
bf904248 810 */
1da177e4 811STATIC void
a50cd269 812xfs_fs_destroy_inode(
848ce8f7 813 struct inode *inode)
1da177e4 814{
848ce8f7
CH
815 struct xfs_inode *ip = XFS_I(inode);
816
cca28fb8 817 trace_xfs_destroy_inode(ip);
99fa8cb3
DC
818
819 XFS_STATS_INC(vn_reclaim);
848ce8f7
CH
820
821 /* bad inode, get out here ASAP */
822 if (is_bad_inode(inode))
823 goto out_reclaim;
824
848ce8f7
CH
825 ASSERT(XFS_FORCED_SHUTDOWN(ip->i_mount) || ip->i_delayed_blks == 0);
826
827 /*
828 * We should never get here with one of the reclaim flags already set.
829 */
830 ASSERT_ALWAYS(!xfs_iflags_test(ip, XFS_IRECLAIMABLE));
831 ASSERT_ALWAYS(!xfs_iflags_test(ip, XFS_IRECLAIM));
832
833 /*
57817c68
DC
834 * We always use background reclaim here because even if the
835 * inode is clean, it still may be under IO and hence we have
836 * to take the flush lock. The background reclaim path handles
837 * this more efficiently than we can here, so simply let background
838 * reclaim tear down all inodes.
848ce8f7 839 */
848ce8f7 840out_reclaim:
57817c68 841 xfs_inode_set_reclaim_tag(ip);
1da177e4
LT
842}
843
07c8f675
DC
844/*
845 * Slab object creation initialisation for the XFS inode.
846 * This covers only the idempotent fields in the XFS inode;
847 * all other fields need to be initialised on allocation
b595076a 848 * from the slab. This avoids the need to repeatedly initialise
07c8f675
DC
849 * fields in the xfs inode that left in the initialise state
850 * when freeing the inode.
851 */
bf904248
DC
852STATIC void
853xfs_fs_inode_init_once(
07c8f675
DC
854 void *inode)
855{
856 struct xfs_inode *ip = inode;
857
858 memset(ip, 0, sizeof(struct xfs_inode));
bf904248
DC
859
860 /* vfs inode */
861 inode_init_once(VFS_I(ip));
862
863 /* xfs inode */
07c8f675
DC
864 atomic_set(&ip->i_pincount, 0);
865 spin_lock_init(&ip->i_flags_lock);
07c8f675
DC
866
867 mrlock_init(&ip->i_lock, MRLOCK_ALLOW_EQUAL_PRI|MRLOCK_BARRIER,
868 "xfsino", ip->i_ino);
07c8f675
DC
869}
870
1da177e4 871STATIC void
b57922d9 872xfs_fs_evict_inode(
1da177e4
LT
873 struct inode *inode)
874{
1543d79c 875 xfs_inode_t *ip = XFS_I(inode);
56d433e4 876
b57922d9 877 trace_xfs_evict_inode(ip);
cca28fb8 878
b57922d9 879 truncate_inode_pages(&inode->i_data, 0);
dbd5768f 880 clear_inode(inode);
99fa8cb3
DC
881 XFS_STATS_INC(vn_rele);
882 XFS_STATS_INC(vn_remove);
883 XFS_STATS_DEC(vn_active);
884
033da48f
CH
885 /*
886 * The iolock is used by the file system to coordinate reads,
887 * writes, and block truncates. Up to this point the lock
888 * protected concurrent accesses by users of the inode. But
889 * from here forward we're doing some final processing of the
890 * inode because we're done with it, and although we reuse the
891 * iolock for protection it is really a distinct lock class
892 * (in the lockdep sense) from before. To keep lockdep happy
893 * (and basically indicate what we are doing), we explicitly
894 * re-init the iolock here.
895 */
896 ASSERT(!rwsem_is_locked(&ip->i_iolock.mr_lock));
897 mrlock_init(&ip->i_iolock, MRLOCK_BARRIER, "xfsio", ip->i_ino);
dcfcf205
DC
898 lockdep_set_class_and_name(&ip->i_iolock.mr_lock,
899 &xfs_iolock_reclaimable, "xfs_iolock_reclaimable");
033da48f 900
99fa8cb3 901 xfs_inactive(ip);
56d433e4 902}
1da177e4 903
5132ba8f
DC
904/*
905 * We do an unlocked check for XFS_IDONTCACHE here because we are already
906 * serialised against cache hits here via the inode->i_lock and igrab() in
907 * xfs_iget_cache_hit(). Hence a lookup that might clear this flag will not be
908 * racing with us, and it avoids needing to grab a spinlock here for every inode
909 * we drop the final reference on.
910 */
911STATIC int
912xfs_fs_drop_inode(
913 struct inode *inode)
914{
915 struct xfs_inode *ip = XFS_I(inode);
916
917 return generic_drop_inode(inode) || (ip->i_flags & XFS_IDONTCACHE);
918}
919
a738159d
CH
920STATIC void
921xfs_free_fsname(
922 struct xfs_mount *mp)
923{
924 kfree(mp->m_fsname);
925 kfree(mp->m_rtname);
926 kfree(mp->m_logname);
927}
928
1da177e4 929STATIC void
a50cd269 930xfs_fs_put_super(
1da177e4
LT
931 struct super_block *sb)
932{
745f6919 933 struct xfs_mount *mp = XFS_M(sb);
1da177e4 934
e48ad316 935 xfs_filestream_unmount(mp);
19f354d4 936 xfs_unmountfs(mp);
8a00ebe4 937 xfs_syncd_stop(mp);
6203300e 938 xfs_freesb(mp);
c962fb79 939 xfs_icsb_destroy_counters(mp);
aa6bf01d 940 xfs_destroy_mount_workqueues(mp);
19f354d4 941 xfs_close_devices(mp);
a738159d 942 xfs_free_fsname(mp);
c962fb79 943 kfree(mp);
1da177e4
LT
944}
945
1da177e4 946STATIC int
69961a26 947xfs_fs_sync_fs(
1da177e4
LT
948 struct super_block *sb,
949 int wait)
950{
745f6919 951 struct xfs_mount *mp = XFS_M(sb);
b83bd138 952 int error;
1da177e4 953
e893bffd 954 /*
34625c66 955 * Doing anything during the async pass would be counterproductive.
e893bffd 956 */
34625c66 957 if (!wait)
69961a26 958 return 0;
69961a26
CH
959
960 error = xfs_quiesce_data(mp);
961 if (error)
962 return -error;
1da177e4 963
69961a26 964 if (laptop_mode) {
1da177e4
LT
965 /*
966 * The disk must be active because we're syncing.
967 * We schedule xfssyncd now (now that the disk is
968 * active) instead of later (when it might not be).
969 */
c6d09b66 970 flush_delayed_work_sync(&mp->m_sync_work);
1da177e4
LT
971 }
972
69961a26 973 return 0;
1da177e4
LT
974}
975
976STATIC int
a50cd269 977xfs_fs_statfs(
726c3342 978 struct dentry *dentry,
1da177e4
LT
979 struct kstatfs *statp)
980{
4ca488eb
CH
981 struct xfs_mount *mp = XFS_M(dentry->d_sb);
982 xfs_sb_t *sbp = &mp->m_sb;
7d095257 983 struct xfs_inode *ip = XFS_I(dentry->d_inode);
4ca488eb
CH
984 __uint64_t fakeinos, id;
985 xfs_extlen_t lsize;
2fe33661 986 __int64_t ffree;
4ca488eb
CH
987
988 statp->f_type = XFS_SB_MAGIC;
989 statp->f_namelen = MAXNAMELEN - 1;
990
991 id = huge_encode_dev(mp->m_ddev_targp->bt_dev);
992 statp->f_fsid.val[0] = (u32)id;
993 statp->f_fsid.val[1] = (u32)(id >> 32);
994
d4d90b57 995 xfs_icsb_sync_counters(mp, XFS_ICSB_LAZY_COUNT);
4ca488eb
CH
996
997 spin_lock(&mp->m_sb_lock);
998 statp->f_bsize = sbp->sb_blocksize;
999 lsize = sbp->sb_logstart ? sbp->sb_logblocks : 0;
1000 statp->f_blocks = sbp->sb_dblocks - lsize;
1001 statp->f_bfree = statp->f_bavail =
1002 sbp->sb_fdblocks - XFS_ALLOC_SET_ASIDE(mp);
1003 fakeinos = statp->f_bfree << sbp->sb_inopblog;
4ca488eb
CH
1004 statp->f_files =
1005 MIN(sbp->sb_icount + fakeinos, (__uint64_t)XFS_MAXINUMBER);
1006 if (mp->m_maxicount)
a19d9f88
CH
1007 statp->f_files = min_t(typeof(statp->f_files),
1008 statp->f_files,
1009 mp->m_maxicount);
2fe33661
SB
1010
1011 /* make sure statp->f_ffree does not underflow */
1012 ffree = statp->f_files - (sbp->sb_icount - sbp->sb_ifree);
1013 statp->f_ffree = max_t(__int64_t, ffree, 0);
1014
4ca488eb
CH
1015 spin_unlock(&mp->m_sb_lock);
1016
da5bf95e 1017 if ((ip->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
7d095257
CH
1018 ((mp->m_qflags & (XFS_PQUOTA_ACCT|XFS_OQUOTA_ENFD))) ==
1019 (XFS_PQUOTA_ACCT|XFS_OQUOTA_ENFD))
1020 xfs_qm_statvfs(ip, statp);
4ca488eb 1021 return 0;
1da177e4
LT
1022}
1023
d5db0f97
ES
1024STATIC void
1025xfs_save_resvblks(struct xfs_mount *mp)
1026{
1027 __uint64_t resblks = 0;
1028
1029 mp->m_resblks_save = mp->m_resblks;
1030 xfs_reserve_blocks(mp, &resblks, NULL);
1031}
1032
1033STATIC void
1034xfs_restore_resvblks(struct xfs_mount *mp)
1035{
1036 __uint64_t resblks;
1037
1038 if (mp->m_resblks_save) {
1039 resblks = mp->m_resblks_save;
1040 mp->m_resblks_save = 0;
1041 } else
1042 resblks = xfs_default_resblks(mp);
1043
1044 xfs_reserve_blocks(mp, &resblks, NULL);
1045}
1046
1da177e4 1047STATIC int
a50cd269 1048xfs_fs_remount(
1da177e4
LT
1049 struct super_block *sb,
1050 int *flags,
1051 char *options)
1052{
745f6919 1053 struct xfs_mount *mp = XFS_M(sb);
62a877e3
CH
1054 substring_t args[MAX_OPT_ARGS];
1055 char *p;
7884bc86 1056 int error;
1da177e4 1057
62a877e3
CH
1058 while ((p = strsep(&options, ",")) != NULL) {
1059 int token;
bdd907ba 1060
62a877e3
CH
1061 if (!*p)
1062 continue;
48b62a1a 1063
62a877e3
CH
1064 token = match_token(p, tokens, args);
1065 switch (token) {
1066 case Opt_barrier:
48b62a1a 1067 mp->m_flags |= XFS_MOUNT_BARRIER;
62a877e3
CH
1068 break;
1069 case Opt_nobarrier:
48b62a1a 1070 mp->m_flags &= ~XFS_MOUNT_BARRIER;
62a877e3
CH
1071 break;
1072 default:
6efdf281
CH
1073 /*
1074 * Logically we would return an error here to prevent
1075 * users from believing they might have changed
1076 * mount options using remount which can't be changed.
1077 *
1078 * But unfortunately mount(8) adds all options from
1079 * mtab and fstab to the mount arguments in some cases
1080 * so we can't blindly reject options, but have to
1081 * check for each specified option if it actually
1082 * differs from the currently set option and only
1083 * reject it if that's the case.
1084 *
1085 * Until that is implemented we return success for
1086 * every remount request, and silently ignore all
1087 * options that we can't actually change.
1088 */
1089#if 0
4f10700a
DC
1090 xfs_info(mp,
1091 "mount option \"%s\" not supported for remount\n", p);
62a877e3 1092 return -EINVAL;
6efdf281 1093#else
6c5e51da 1094 break;
6efdf281 1095#endif
48b62a1a 1096 }
62a877e3
CH
1097 }
1098
7884bc86 1099 /* ro -> rw */
62a877e3
CH
1100 if ((mp->m_flags & XFS_MOUNT_RDONLY) && !(*flags & MS_RDONLY)) {
1101 mp->m_flags &= ~XFS_MOUNT_RDONLY;
7884bc86
CH
1102
1103 /*
1104 * If this is the first remount to writeable state we
1105 * might have some superblock changes to update.
1106 */
1107 if (mp->m_update_flags) {
1108 error = xfs_mount_log_sb(mp, mp->m_update_flags);
1109 if (error) {
4f10700a 1110 xfs_warn(mp, "failed to write sb changes");
7884bc86
CH
1111 return error;
1112 }
1113 mp->m_update_flags = 0;
1114 }
cbe132a8
DC
1115
1116 /*
1117 * Fill out the reserve pool if it is empty. Use the stashed
1118 * value if it is non-zero, otherwise go with the default.
1119 */
d5db0f97 1120 xfs_restore_resvblks(mp);
62a877e3
CH
1121 }
1122
1123 /* rw -> ro */
1124 if (!(mp->m_flags & XFS_MOUNT_RDONLY) && (*flags & MS_RDONLY)) {
cbe132a8
DC
1125 /*
1126 * After we have synced the data but before we sync the
1127 * metadata, we need to free up the reserve block pool so that
1128 * the used block count in the superblock on disk is correct at
1129 * the end of the remount. Stash the current reserve pool size
1130 * so that if we get remounted rw, we can return it to the same
1131 * size.
1132 */
cbe132a8 1133
e9f1c6ee 1134 xfs_quiesce_data(mp);
d5db0f97 1135 xfs_save_resvblks(mp);
76bf105c 1136 xfs_quiesce_attr(mp);
48b62a1a
CH
1137 mp->m_flags |= XFS_MOUNT_RDONLY;
1138 }
1139
62a877e3 1140 return 0;
1da177e4
LT
1141}
1142
9909c4aa
CH
1143/*
1144 * Second stage of a freeze. The data is already frozen so we only
76bf105c 1145 * need to take care of the metadata. Once that's done write a dummy
9909c4aa
CH
1146 * record to dirty the log in case of a crash while frozen.
1147 */
c4be0c1d
TS
1148STATIC int
1149xfs_fs_freeze(
1da177e4
LT
1150 struct super_block *sb)
1151{
9909c4aa
CH
1152 struct xfs_mount *mp = XFS_M(sb);
1153
d5db0f97 1154 xfs_save_resvblks(mp);
76bf105c 1155 xfs_quiesce_attr(mp);
c58efdb4 1156 return -xfs_fs_log_dummy(mp);
1da177e4
LT
1157}
1158
d5db0f97
ES
1159STATIC int
1160xfs_fs_unfreeze(
1161 struct super_block *sb)
1162{
1163 struct xfs_mount *mp = XFS_M(sb);
1164
1165 xfs_restore_resvblks(mp);
1166 return 0;
1167}
1168
1da177e4 1169STATIC int
a50cd269 1170xfs_fs_show_options(
1da177e4 1171 struct seq_file *m,
34c80b1d 1172 struct dentry *root)
1da177e4 1173{
34c80b1d 1174 return -xfs_showargs(XFS_M(root->d_sb), m);
1da177e4
LT
1175}
1176
f8f15e42
CH
1177/*
1178 * This function fills in xfs_mount_t fields based on mount args.
1179 * Note: the superblock _has_ now been read in.
1180 */
1181STATIC int
1182xfs_finish_flags(
f8f15e42
CH
1183 struct xfs_mount *mp)
1184{
1185 int ronly = (mp->m_flags & XFS_MOUNT_RDONLY);
1186
025dfdaf 1187 /* Fail a mount where the logbuf is smaller than the log stripe */
f8f15e42 1188 if (xfs_sb_version_haslogv2(&mp->m_sb)) {
9d565ffa
CH
1189 if (mp->m_logbsize <= 0 &&
1190 mp->m_sb.sb_logsunit > XLOG_BIG_RECORD_BSIZE) {
f8f15e42 1191 mp->m_logbsize = mp->m_sb.sb_logsunit;
9d565ffa
CH
1192 } else if (mp->m_logbsize > 0 &&
1193 mp->m_logbsize < mp->m_sb.sb_logsunit) {
4f10700a
DC
1194 xfs_warn(mp,
1195 "logbuf size must be greater than or equal to log stripe size");
f8f15e42
CH
1196 return XFS_ERROR(EINVAL);
1197 }
1198 } else {
1199 /* Fail a mount if the logbuf is larger than 32K */
9d565ffa 1200 if (mp->m_logbsize > XLOG_BIG_RECORD_BSIZE) {
4f10700a
DC
1201 xfs_warn(mp,
1202 "logbuf size for version 1 logs must be 16K or 32K");
f8f15e42
CH
1203 return XFS_ERROR(EINVAL);
1204 }
1205 }
1206
1207 /*
1208 * mkfs'ed attr2 will turn on attr2 mount unless explicitly
1209 * told by noattr2 to turn it off
1210 */
1211 if (xfs_sb_version_hasattr2(&mp->m_sb) &&
9d565ffa 1212 !(mp->m_flags & XFS_MOUNT_NOATTR2))
f8f15e42
CH
1213 mp->m_flags |= XFS_MOUNT_ATTR2;
1214
1215 /*
1216 * prohibit r/w mounts of read-only filesystems
1217 */
1218 if ((mp->m_sb.sb_flags & XFS_SBF_READONLY) && !ronly) {
4f10700a
DC
1219 xfs_warn(mp,
1220 "cannot mount a read-only filesystem as read-write");
f8f15e42
CH
1221 return XFS_ERROR(EROFS);
1222 }
1223
f8f15e42
CH
1224 return 0;
1225}
1226
1da177e4 1227STATIC int
a50cd269 1228xfs_fs_fill_super(
1da177e4
LT
1229 struct super_block *sb,
1230 void *data,
1231 int silent)
1232{
f3dcc13f 1233 struct inode *root;
745f6919 1234 struct xfs_mount *mp = NULL;
c962fb79 1235 int flags = 0, error = ENOMEM;
bdd907ba 1236
c962fb79
CH
1237 mp = kzalloc(sizeof(struct xfs_mount), GFP_KERNEL);
1238 if (!mp)
9d565ffa 1239 goto out;
1da177e4 1240
c962fb79 1241 spin_lock_init(&mp->m_sb_lock);
c962fb79
CH
1242 mutex_init(&mp->m_growlock);
1243 atomic_set(&mp->m_active_trans, 0);
74394496 1244
b267ce99
CH
1245 mp->m_super = sb;
1246 sb->s_fs_info = mp;
1da177e4 1247
288699fe 1248 error = xfs_parseargs(mp, (char *)data);
745f6919 1249 if (error)
9d565ffa 1250 goto out_free_fsname;
1da177e4
LT
1251
1252 sb_min_blocksize(sb, BBSIZE);
0ec58516 1253 sb->s_xattr = xfs_xattr_handlers;
a50cd269 1254 sb->s_export_op = &xfs_export_operations;
fcafb71b 1255#ifdef CONFIG_XFS_QUOTA
a50cd269 1256 sb->s_qcop = &xfs_quotactl_operations;
fcafb71b 1257#endif
a50cd269 1258 sb->s_op = &xfs_super_operations;
1da177e4 1259
9d565ffa 1260 if (silent)
f8f15e42
CH
1261 flags |= XFS_MFSI_QUIET;
1262
9d565ffa 1263 error = xfs_open_devices(mp);
19f354d4 1264 if (error)
288699fe 1265 goto out_free_fsname;
f8f15e42 1266
aa6bf01d 1267 error = xfs_init_mount_workqueues(mp);
61ba35de
CH
1268 if (error)
1269 goto out_close_devices;
c962fb79 1270
aa6bf01d
CH
1271 error = xfs_icsb_init_counters(mp);
1272 if (error)
1273 goto out_destroy_workqueues;
1274
f8f15e42
CH
1275 error = xfs_readsb(mp, flags);
1276 if (error)
9d565ffa
CH
1277 goto out_destroy_counters;
1278
1279 error = xfs_finish_flags(mp);
f8f15e42 1280 if (error)
effa2eda 1281 goto out_free_sb;
f8f15e42 1282
e34b562c 1283 error = xfs_setup_devices(mp);
19f354d4 1284 if (error)
effa2eda 1285 goto out_free_sb;
f8f15e42 1286
f8f15e42
CH
1287 error = xfs_filestream_mount(mp);
1288 if (error)
effa2eda 1289 goto out_free_sb;
f8f15e42 1290
704b2907
DC
1291 /*
1292 * we must configure the block size in the superblock before we run the
1293 * full mount process as the mount process can lookup and cache inodes.
1294 * For the same reason we must also initialise the syncd and register
1295 * the inode cache shrinker so that inodes can be reclaimed during
1296 * operations like a quotacheck that iterate all inodes in the
1297 * filesystem.
1298 */
4ca488eb
CH
1299 sb->s_magic = XFS_SB_MAGIC;
1300 sb->s_blocksize = mp->m_sb.sb_blocksize;
1301 sb->s_blocksize_bits = ffs(sb->s_blocksize) - 1;
1da177e4 1302 sb->s_maxbytes = xfs_max_file_offset(sb->s_blocksize_bits);
8de52778 1303 sb->s_max_links = XFS_MAXLINK;
1da177e4
LT
1304 sb->s_time_gran = 1;
1305 set_posix_acl_flag(sb);
1306
8a00ebe4 1307 error = xfs_syncd_init(mp);
704b2907 1308 if (error)
2bcf6e97
CH
1309 goto out_filestream_unmount;
1310
8a00ebe4 1311 error = xfs_mountfs(mp);
2bcf6e97 1312 if (error)
8a00ebe4 1313 goto out_syncd_stop;
704b2907 1314
01651646 1315 root = igrab(VFS_I(mp->m_rootip));
f3dcc13f 1316 if (!root) {
cbc89dcf 1317 error = ENOENT;
8a00ebe4 1318 goto out_unmount;
cbc89dcf 1319 }
f3dcc13f
CH
1320 if (is_bad_inode(root)) {
1321 error = EINVAL;
8a00ebe4 1322 goto out_unmount;
1da177e4 1323 }
48fde701 1324 sb->s_root = d_make_root(root);
f3dcc13f
CH
1325 if (!sb->s_root) {
1326 error = ENOMEM;
8a00ebe4 1327 goto out_unmount;
1da177e4 1328 }
74394496 1329
1da177e4 1330 return 0;
8a00ebe4
DC
1331 out_syncd_stop:
1332 xfs_syncd_stop(mp);
120226c1
CH
1333 out_filestream_unmount:
1334 xfs_filestream_unmount(mp);
effa2eda
CH
1335 out_free_sb:
1336 xfs_freesb(mp);
9d565ffa 1337 out_destroy_counters:
c962fb79 1338 xfs_icsb_destroy_counters(mp);
aa6bf01d
CH
1339out_destroy_workqueues:
1340 xfs_destroy_mount_workqueues(mp);
61ba35de 1341 out_close_devices:
19f354d4 1342 xfs_close_devices(mp);
9d565ffa
CH
1343 out_free_fsname:
1344 xfs_free_fsname(mp);
c962fb79 1345 kfree(mp);
9d565ffa 1346 out:
c962fb79 1347 return -error;
f8f15e42 1348
2bcf6e97 1349 out_unmount:
e48ad316 1350 xfs_filestream_unmount(mp);
19f354d4 1351 xfs_unmountfs(mp);
8a00ebe4 1352 xfs_syncd_stop(mp);
6203300e 1353 goto out_free_sb;
1da177e4
LT
1354}
1355
152a0836
AV
1356STATIC struct dentry *
1357xfs_fs_mount(
1da177e4
LT
1358 struct file_system_type *fs_type,
1359 int flags,
1360 const char *dev_name,
152a0836 1361 void *data)
1da177e4 1362{
152a0836 1363 return mount_bdev(fs_type, flags, dev_name, data, xfs_fs_fill_super);
a50cd269
NS
1364}
1365
8daaa831
DC
1366static int
1367xfs_fs_nr_cached_objects(
1368 struct super_block *sb)
1369{
1370 return xfs_reclaim_inodes_count(XFS_M(sb));
1371}
1372
1373static void
1374xfs_fs_free_cached_objects(
1375 struct super_block *sb,
1376 int nr_to_scan)
1377{
1378 xfs_reclaim_inodes_nr(XFS_M(sb), nr_to_scan);
1379}
1380
b87221de 1381static const struct super_operations xfs_super_operations = {
a50cd269
NS
1382 .alloc_inode = xfs_fs_alloc_inode,
1383 .destroy_inode = xfs_fs_destroy_inode,
b57922d9 1384 .evict_inode = xfs_fs_evict_inode,
5132ba8f 1385 .drop_inode = xfs_fs_drop_inode,
a50cd269 1386 .put_super = xfs_fs_put_super,
69961a26 1387 .sync_fs = xfs_fs_sync_fs,
c4be0c1d 1388 .freeze_fs = xfs_fs_freeze,
d5db0f97 1389 .unfreeze_fs = xfs_fs_unfreeze,
a50cd269
NS
1390 .statfs = xfs_fs_statfs,
1391 .remount_fs = xfs_fs_remount,
1392 .show_options = xfs_fs_show_options,
8daaa831
DC
1393 .nr_cached_objects = xfs_fs_nr_cached_objects,
1394 .free_cached_objects = xfs_fs_free_cached_objects,
1da177e4
LT
1395};
1396
5085b607 1397static struct file_system_type xfs_fs_type = {
1da177e4
LT
1398 .owner = THIS_MODULE,
1399 .name = "xfs",
152a0836 1400 .mount = xfs_fs_mount,
1da177e4
LT
1401 .kill_sb = kill_block_super,
1402 .fs_flags = FS_REQUIRES_DEV,
1403};
1404
9f8868ff
CH
1405STATIC int __init
1406xfs_init_zones(void)
1407{
9f8868ff
CH
1408
1409 xfs_ioend_zone = kmem_zone_init(sizeof(xfs_ioend_t), "xfs_ioend");
1410 if (!xfs_ioend_zone)
bf904248 1411 goto out;
9f8868ff
CH
1412
1413 xfs_ioend_pool = mempool_create_slab_pool(4 * MAX_BUF_PER_PAGE,
1414 xfs_ioend_zone);
1415 if (!xfs_ioend_pool)
1416 goto out_destroy_ioend_zone;
1417
1418 xfs_log_ticket_zone = kmem_zone_init(sizeof(xlog_ticket_t),
1419 "xfs_log_ticket");
1420 if (!xfs_log_ticket_zone)
1421 goto out_destroy_ioend_pool;
1422
1423 xfs_bmap_free_item_zone = kmem_zone_init(sizeof(xfs_bmap_free_item_t),
1424 "xfs_bmap_free_item");
1425 if (!xfs_bmap_free_item_zone)
1426 goto out_destroy_log_ticket_zone;
bf904248 1427
9f8868ff
CH
1428 xfs_btree_cur_zone = kmem_zone_init(sizeof(xfs_btree_cur_t),
1429 "xfs_btree_cur");
1430 if (!xfs_btree_cur_zone)
1431 goto out_destroy_bmap_free_item_zone;
1432
1433 xfs_da_state_zone = kmem_zone_init(sizeof(xfs_da_state_t),
1434 "xfs_da_state");
1435 if (!xfs_da_state_zone)
1436 goto out_destroy_btree_cur_zone;
1437
9f8868ff
CH
1438 xfs_ifork_zone = kmem_zone_init(sizeof(xfs_ifork_t), "xfs_ifork");
1439 if (!xfs_ifork_zone)
1d9025e5 1440 goto out_destroy_da_state_zone;
9f8868ff
CH
1441
1442 xfs_trans_zone = kmem_zone_init(sizeof(xfs_trans_t), "xfs_trans");
1443 if (!xfs_trans_zone)
1444 goto out_destroy_ifork_zone;
1445
e98c414f
CH
1446 xfs_log_item_desc_zone =
1447 kmem_zone_init(sizeof(struct xfs_log_item_desc),
1448 "xfs_log_item_desc");
1449 if (!xfs_log_item_desc_zone)
1450 goto out_destroy_trans_zone;
1451
9f8868ff
CH
1452 /*
1453 * The size of the zone allocated buf log item is the maximum
1454 * size possible under XFS. This wastes a little bit of memory,
1455 * but it is much faster.
1456 */
77c1a08f
DC
1457 xfs_buf_item_zone = kmem_zone_init(sizeof(struct xfs_buf_log_item),
1458 "xfs_buf_item");
9f8868ff 1459 if (!xfs_buf_item_zone)
e98c414f 1460 goto out_destroy_log_item_desc_zone;
9f8868ff
CH
1461
1462 xfs_efd_zone = kmem_zone_init((sizeof(xfs_efd_log_item_t) +
1463 ((XFS_EFD_MAX_FAST_EXTENTS - 1) *
1464 sizeof(xfs_extent_t))), "xfs_efd_item");
1465 if (!xfs_efd_zone)
1466 goto out_destroy_buf_item_zone;
1467
1468 xfs_efi_zone = kmem_zone_init((sizeof(xfs_efi_log_item_t) +
1469 ((XFS_EFI_MAX_FAST_EXTENTS - 1) *
1470 sizeof(xfs_extent_t))), "xfs_efi_item");
1471 if (!xfs_efi_zone)
1472 goto out_destroy_efd_zone;
1473
1474 xfs_inode_zone =
1475 kmem_zone_init_flags(sizeof(xfs_inode_t), "xfs_inode",
bf904248
DC
1476 KM_ZONE_HWALIGN | KM_ZONE_RECLAIM | KM_ZONE_SPREAD,
1477 xfs_fs_inode_init_once);
9f8868ff
CH
1478 if (!xfs_inode_zone)
1479 goto out_destroy_efi_zone;
1480
1481 xfs_ili_zone =
1482 kmem_zone_init_flags(sizeof(xfs_inode_log_item_t), "xfs_ili",
1483 KM_ZONE_SPREAD, NULL);
1484 if (!xfs_ili_zone)
1485 goto out_destroy_inode_zone;
1486
9f8868ff
CH
1487 return 0;
1488
9f8868ff
CH
1489 out_destroy_inode_zone:
1490 kmem_zone_destroy(xfs_inode_zone);
1491 out_destroy_efi_zone:
1492 kmem_zone_destroy(xfs_efi_zone);
1493 out_destroy_efd_zone:
1494 kmem_zone_destroy(xfs_efd_zone);
1495 out_destroy_buf_item_zone:
1496 kmem_zone_destroy(xfs_buf_item_zone);
e98c414f
CH
1497 out_destroy_log_item_desc_zone:
1498 kmem_zone_destroy(xfs_log_item_desc_zone);
9f8868ff
CH
1499 out_destroy_trans_zone:
1500 kmem_zone_destroy(xfs_trans_zone);
1501 out_destroy_ifork_zone:
1502 kmem_zone_destroy(xfs_ifork_zone);
9f8868ff
CH
1503 out_destroy_da_state_zone:
1504 kmem_zone_destroy(xfs_da_state_zone);
1505 out_destroy_btree_cur_zone:
1506 kmem_zone_destroy(xfs_btree_cur_zone);
1507 out_destroy_bmap_free_item_zone:
1508 kmem_zone_destroy(xfs_bmap_free_item_zone);
1509 out_destroy_log_ticket_zone:
1510 kmem_zone_destroy(xfs_log_ticket_zone);
1511 out_destroy_ioend_pool:
1512 mempool_destroy(xfs_ioend_pool);
1513 out_destroy_ioend_zone:
1514 kmem_zone_destroy(xfs_ioend_zone);
9f8868ff
CH
1515 out:
1516 return -ENOMEM;
1517}
1518
1519STATIC void
1520xfs_destroy_zones(void)
1521{
9f8868ff
CH
1522 kmem_zone_destroy(xfs_ili_zone);
1523 kmem_zone_destroy(xfs_inode_zone);
1524 kmem_zone_destroy(xfs_efi_zone);
1525 kmem_zone_destroy(xfs_efd_zone);
1526 kmem_zone_destroy(xfs_buf_item_zone);
e98c414f 1527 kmem_zone_destroy(xfs_log_item_desc_zone);
9f8868ff
CH
1528 kmem_zone_destroy(xfs_trans_zone);
1529 kmem_zone_destroy(xfs_ifork_zone);
9f8868ff
CH
1530 kmem_zone_destroy(xfs_da_state_zone);
1531 kmem_zone_destroy(xfs_btree_cur_zone);
1532 kmem_zone_destroy(xfs_bmap_free_item_zone);
1533 kmem_zone_destroy(xfs_log_ticket_zone);
1534 mempool_destroy(xfs_ioend_pool);
1535 kmem_zone_destroy(xfs_ioend_zone);
9f8868ff
CH
1536
1537}
1da177e4 1538
0bf6a5bd
DC
1539STATIC int __init
1540xfs_init_workqueues(void)
1541{
1542 /*
40d344ec
CH
1543 * We never want to the same work item to run twice, reclaiming inodes
1544 * or idling the log is not going to get any faster by multiple CPUs
1545 * competing for ressources. Use the default large max_active value
1546 * so that even lots of filesystems can perform these task in parallel.
0bf6a5bd 1547 */
40d344ec 1548 xfs_syncd_wq = alloc_workqueue("xfssyncd", WQ_NON_REENTRANT, 0);
0bf6a5bd 1549 if (!xfs_syncd_wq)
0030807c 1550 return -ENOMEM;
c999a223
DC
1551
1552 /*
1553 * The allocation workqueue can be used in memory reclaim situations
1554 * (writepage path), and parallelism is only limited by the number of
1555 * AGs in all the filesystems mounted. Hence use the default large
1556 * max_active value for this workqueue.
1557 */
1558 xfs_alloc_wq = alloc_workqueue("xfsalloc", WQ_MEM_RECLAIM, 0);
1559 if (!xfs_alloc_wq)
1560 goto out_destroy_syncd;
1561
0bf6a5bd 1562 return 0;
c999a223
DC
1563
1564out_destroy_syncd:
1565 destroy_workqueue(xfs_syncd_wq);
1566 return -ENOMEM;
0bf6a5bd
DC
1567}
1568
39411f81 1569STATIC void
0bf6a5bd
DC
1570xfs_destroy_workqueues(void)
1571{
c999a223 1572 destroy_workqueue(xfs_alloc_wq);
0bf6a5bd
DC
1573 destroy_workqueue(xfs_syncd_wq);
1574}
1575
1da177e4 1576STATIC int __init
9f8868ff 1577init_xfs_fs(void)
1da177e4
LT
1578{
1579 int error;
1da177e4 1580
65795910
CH
1581 printk(KERN_INFO XFS_VERSION_STRING " with "
1582 XFS_BUILD_OPTIONS " enabled\n");
1da177e4 1583
9f8868ff 1584 xfs_dir_startup();
1da177e4 1585
8758280f 1586 error = xfs_init_zones();
9f8868ff
CH
1587 if (error)
1588 goto out;
1589
0bf6a5bd 1590 error = xfs_init_workqueues();
9f8868ff 1591 if (error)
0b1b213f 1592 goto out_destroy_zones;
9f8868ff 1593
0bf6a5bd
DC
1594 error = xfs_mru_cache_init();
1595 if (error)
1596 goto out_destroy_wq;
1597
9f8868ff
CH
1598 error = xfs_filestream_init();
1599 if (error)
1600 goto out_mru_cache_uninit;
1da177e4 1601
ce8e922c 1602 error = xfs_buf_init();
9f8868ff
CH
1603 if (error)
1604 goto out_filestream_uninit;
1605
1606 error = xfs_init_procfs();
1607 if (error)
1608 goto out_buf_terminate;
1609
1610 error = xfs_sysctl_register();
1611 if (error)
1612 goto out_cleanup_procfs;
1da177e4 1613
a05931ce
CH
1614 error = xfs_qm_init();
1615 if (error)
1616 goto out_sysctl_unregister;
1da177e4
LT
1617
1618 error = register_filesystem(&xfs_fs_type);
1619 if (error)
a05931ce 1620 goto out_qm_exit;
1da177e4
LT
1621 return 0;
1622
a05931ce
CH
1623 out_qm_exit:
1624 xfs_qm_exit();
9f8868ff
CH
1625 out_sysctl_unregister:
1626 xfs_sysctl_unregister();
1627 out_cleanup_procfs:
1628 xfs_cleanup_procfs();
1629 out_buf_terminate:
ce8e922c 1630 xfs_buf_terminate();
9f8868ff
CH
1631 out_filestream_uninit:
1632 xfs_filestream_uninit();
1633 out_mru_cache_uninit:
1634 xfs_mru_cache_uninit();
0bf6a5bd
DC
1635 out_destroy_wq:
1636 xfs_destroy_workqueues();
9f8868ff 1637 out_destroy_zones:
8758280f 1638 xfs_destroy_zones();
9f8868ff 1639 out:
1da177e4
LT
1640 return error;
1641}
1642
1643STATIC void __exit
9f8868ff 1644exit_xfs_fs(void)
1da177e4 1645{
a05931ce 1646 xfs_qm_exit();
1da177e4 1647 unregister_filesystem(&xfs_fs_type);
9f8868ff
CH
1648 xfs_sysctl_unregister();
1649 xfs_cleanup_procfs();
ce8e922c 1650 xfs_buf_terminate();
9f8868ff
CH
1651 xfs_filestream_uninit();
1652 xfs_mru_cache_uninit();
0bf6a5bd 1653 xfs_destroy_workqueues();
8758280f 1654 xfs_destroy_zones();
1da177e4
LT
1655}
1656
1657module_init(init_xfs_fs);
1658module_exit(exit_xfs_fs);
1659
1660MODULE_AUTHOR("Silicon Graphics, Inc.");
1661MODULE_DESCRIPTION(XFS_VERSION_STRING " with " XFS_BUILD_OPTIONS " enabled");
1662MODULE_LICENSE("GPL");
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